JP2007154812A - Flange structure for covers made of synthetic resin - Google Patents

Flange structure for covers made of synthetic resin Download PDF

Info

Publication number
JP2007154812A
JP2007154812A JP2005353213A JP2005353213A JP2007154812A JP 2007154812 A JP2007154812 A JP 2007154812A JP 2005353213 A JP2005353213 A JP 2005353213A JP 2005353213 A JP2005353213 A JP 2005353213A JP 2007154812 A JP2007154812 A JP 2007154812A
Authority
JP
Japan
Prior art keywords
flange
bolt boss
bolt
flange portion
synthetic resin
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
JP2005353213A
Other languages
Japanese (ja)
Other versions
JP4681440B2 (en
Inventor
Seiji Tani
征爾 谷
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Mahle Filter Systems Japan Corp
Original Assignee
Mahle Filter Systems Japan Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Mahle Filter Systems Japan Corp filed Critical Mahle Filter Systems Japan Corp
Priority to JP2005353213A priority Critical patent/JP4681440B2/en
Publication of JP2007154812A publication Critical patent/JP2007154812A/en
Application granted granted Critical
Publication of JP4681440B2 publication Critical patent/JP4681440B2/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Abstract

<P>PROBLEM TO BE SOLVED: To inhibit drop of sealing performance at a part between bolts of a resin cylinder head cover or the like used under high temperature environment. <P>SOLUTION: A thick flange part 5 is formed at an end edge of a thin side wall 4 of the cylinder head cover 1 and cylindrical bolt boss parts 6 provided at suitable interval are formed as one unit. Height of the flange part 5 in a bolt axial direction changes to be high at an end part 5a contacting the bolt boss part 6 and lowest at a canter part 5b between the bolt boss parts 6. When the flange part 5 between two points of which positions are restrained by bolts relatively thermally expands at a time of high temperature, force pressing down the center part 5b is generated and sealing performance near the center part 5b is improved. Thickness of the flange part 5 is large at the center part 5b to offset drop of rigidity accompanying reduction of height. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

この発明は、例えば内燃機関のシリンダヘッドカバーやチェーンケースなどの合成樹脂製のカバー類における周縁のフランジ構造の改良に関する。   The present invention relates to an improvement in a peripheral flange structure in synthetic resin covers such as a cylinder head cover and a chain case of an internal combustion engine.

例えば、内燃機関のシリンダヘッド上面に取り付けられるシリンダヘッドカバーは、特許文献1等に開示されているように、薄肉なカバー側壁の端縁に該カバー側壁よりも厚肉となったフランジ部を有し、このフランジ部と一体に略円筒状のボルトボス部が複数箇所に設けられた構成となっている。そして、上記フランジ部とシリンダヘッドとの間にガスケットを介して、複数のボルトにより締付固定されている。   For example, a cylinder head cover attached to the upper surface of a cylinder head of an internal combustion engine has a flange portion that is thicker than the cover side wall at the edge of the thin cover side wall as disclosed in Patent Document 1 and the like. In addition, a substantially cylindrical bolt boss portion is provided at a plurality of locations integrally with the flange portion. The flange portion and the cylinder head are fastened and fixed by a plurality of bolts via a gasket.

なお、特許文献1は軽合金からなるシリンダヘッドカバーを開示しているが、近時は、主に軽量化のために、例えばガラス繊維強化ポリアミド樹脂等の合成樹脂製のシリンダヘッドカバー等が多く利用されている。
特開2000−104891号公報
Patent Document 1 discloses a cylinder head cover made of a light alloy, but recently, for example, a cylinder head cover made of a synthetic resin such as a glass fiber reinforced polyamide resin is mainly used for weight reduction. ing.
JP 2000-104881 A

上記のように適宜な間隔で配置されるボルトにより取り付けられるカバー類、例えばシリンダヘッドカバーにあっては、良く知られているように、ボルト近傍では十分なシール面圧が確保できるものの、ボルトとボルトとの間の中間部ではシール面圧が低下し、シール性が低下しやすい。   As is well known, in the case of covers attached by bolts arranged at appropriate intervals as described above, for example, a cylinder head cover, a sufficient seal surface pressure can be secured in the vicinity of the bolt, but the bolt and the bolt In the intermediate portion between the two, the sealing surface pressure is lowered, and the sealing performance is likely to be lowered.

特に、合成樹脂製のシリンダヘッドカバーでは、内燃機関の運転に伴って温度が高くなると、樹脂材料の剛性低下が生じるため、ボルト間のシール性低下がより顕著となる。   In particular, in the cylinder head cover made of synthetic resin, when the temperature is increased with the operation of the internal combustion engine, the rigidity of the resin material is lowered, so that the sealing performance between the bolts is more remarkable.

本発明は、内燃機関のシリンダヘッドカバーのように高温環境下で使用される合成樹脂製カバー類において、フランジ部の過度の厚肉化などによる大幅な重量増加を伴うことなく、ボルト間の部分でのシール性低下を抑制することを目的としている。   The present invention provides a synthetic resin cover used in a high temperature environment, such as a cylinder head cover of an internal combustion engine, in a portion between bolts without a significant increase in weight due to excessive thickening of the flange portion. It aims at suppressing the sealing performance fall.

本発明に係る合成樹脂製カバー類のフランジ構造は、カバー側壁の端縁に該カバー側壁よりも厚肉となったフランジ部を有するとともに、適宜な間隔で配置された略円筒状のボルトボス部が、このフランジ部に連結されて一体に成形されてなり、相対的に熱膨張率が小さな相手側部材と上記フランジ部との間にガスケットを介して上記ボルトボス部を通るボルトにより取り付けられる合成樹脂製カバー類において、一対のボルトボス部の間のフランジ部のボルト軸方向の高さが、ボルトボス部に接する両端部から両ボルトボス部の間の中央部へ向かって徐々に小さくなるように変化していることを特徴としている。   The flange structure of the synthetic resin covers according to the present invention has a flange portion that is thicker than the cover side wall at the edge of the cover side wall, and substantially cylindrical bolt boss portions arranged at appropriate intervals. It is made of a synthetic resin that is connected to the flange portion and is integrally molded, and is attached by a bolt that passes through the bolt boss portion via a gasket between a counterpart member having a relatively low coefficient of thermal expansion and the flange portion. In the covers, the height in the bolt axial direction of the flange portion between the pair of bolt boss portions changes so as to gradually decrease from both end portions in contact with the bolt boss portion toward the center portion between both bolt boss portions. It is characterized by that.

上記の合成樹脂製カバー類のフランジ部は、各ボルトボス部の位置でボルトにより固定されているが、例えば内燃機関の運転などにより温度上昇すると、相手側部材との熱膨張率差に起因して、相手側部材よりも相対的に大きく膨張しようとする。従って、一対のボルトにより両端部が拘束されているボルト間のフランジ部に着目すると、温度上昇に伴って長手方向(ボルト間の方向)に圧縮応力が発生する。ここで、上記のようにフランジ部のボルト軸方向の高さが変化していると、これに伴って上記の圧縮応力が斜め方向へ傾き、その反力として、ボルト間の中央部を下方へ付勢する分力が発生する。つまり、熱膨張に伴い、フランジ部のボルト間の中央部が相手側部材へ向かって押し付けられることになり、この部分でのシール性が向上する。   The flange portions of the synthetic resin covers are fixed by bolts at the positions of the respective bolt boss portions. For example, when the temperature rises due to the operation of the internal combustion engine, the flange portion is caused by a difference in thermal expansion coefficient with the counterpart member. Try to expand relatively larger than the counterpart member. Therefore, when attention is paid to the flange portion between the bolts whose both ends are constrained by a pair of bolts, compressive stress is generated in the longitudinal direction (direction between the bolts) as the temperature rises. Here, if the height of the flange portion in the bolt axis direction is changed as described above, the compressive stress is inclined in the oblique direction, and as a reaction force, the central portion between the bolts is lowered downward. A component force to be energized is generated. That is, with thermal expansion, the center part between the bolts of the flange part is pressed toward the mating member, and the sealing performance at this part is improved.

望ましくは、さらに、上記フランジ部の厚さが、ボルトボス部に接する両端部から両ボルトボス部の間の中央部へ向かって徐々に大きくなるように変化している。   Desirably, the thickness of the flange portion is gradually increased from both end portions in contact with the bolt boss portion toward a central portion between both bolt boss portions.

すなわち、上記のようにフランジ部のボルト軸方向の高さが両ボルトボス部の間の中央部で低くなるようにすると、フランジ部自体の剛性としては、高さが低い中央部でボルトボス部近傍の両端部よりも低くなってしまい、好ましくない。これに対し、フランジ部の厚さが、ボルトボス部に接する両端部から両ボルトボス部の間の中央部へ向かって徐々に大きくなるようにすれば、高さが低い中央部での剛性低下が相殺され、この中央部でのシール性がより確実に得られる。   That is, when the height of the flange portion in the bolt axial direction is lowered at the center portion between the two bolt boss portions as described above, the rigidity of the flange portion itself is as follows. Since it becomes lower than both ends, it is not preferable. On the other hand, if the thickness of the flange part gradually increases from both ends in contact with the bolt boss part toward the center part between the two bolt boss parts, the decrease in rigidity at the center part where the height is low is offset. Thus, the sealing performance at the center can be obtained more reliably.

本発明の一つの態様では、厚肉となったフランジ部そのものの高さが変化するが、他の一つの態様では、フランジ部の一部としてボルト軸方向に沿ったリブ状部を有しており、このリブ状部の高さが変化している。   In one aspect of the present invention, the height of the flange portion itself that has become thick varies, but in another aspect, a rib-shaped portion along the bolt axis direction is provided as a part of the flange portion. The height of the rib-like portion is changed.

この発明に係る合成樹脂製カバー類のフランジ構造によれば、樹脂材料の剛性低下が懸念される高温時に、温度上昇に伴う熱膨張を利用してフランジ部のボルトボス部の間の部分におけるシール性低下を効果的に抑制することができる。   According to the flange structure of the synthetic resin covers according to the present invention, the sealing performance at the portion between the bolt boss portions of the flange portion using the thermal expansion accompanying the temperature rise at a high temperature at which the rigidity of the resin material may be lowered. Reduction can be effectively suppressed.

以下、内燃機関のシリンダヘッドカバー1に適用した一実施例を図面に基づいて詳細に説明する。   Hereinafter, an embodiment applied to a cylinder head cover 1 of an internal combustion engine will be described in detail with reference to the drawings.

図1は、この発明に係る直列4気筒内燃機関用の合成樹脂製シリンダヘッドカバー1の概略を示す斜視図である。このシリンダヘッドカバー1は、例えばガラス繊維強化ポリアミド樹脂を用いて一体に射出成形されたものであって、全体として下面が開口した略矩形の箱状をなしており、上面中央部に4個の点火プラグ挿入孔2が一列に並んで配置されているとともに、一端部に図示せぬオイルフィラーキャップが取り付けられるオイル注入口3を有している。このシリンダヘッドカバー1の周囲の側壁4は比較的に薄肉に成形されており、その端縁に、該側壁4よりも厚肉となったフランジ部5が一体に形成されている。   FIG. 1 is a perspective view schematically showing a synthetic resin cylinder head cover 1 for an in-line four-cylinder internal combustion engine according to the present invention. The cylinder head cover 1 is integrally injection-molded using, for example, glass fiber reinforced polyamide resin. The cylinder head cover 1 has a substantially rectangular box shape with an open lower surface as a whole. The plug insertion holes 2 are arranged in a line and have an oil injection port 3 to which an oil filler cap (not shown) is attached at one end. The side wall 4 around the cylinder head cover 1 is formed to be relatively thin, and a flange portion 5 that is thicker than the side wall 4 is integrally formed at the edge thereof.

上記のフランジ部5は、全周に亘って連続しており、適宜な間隔で配置された略円筒状のボルトボス部6が、このフランジ部5に連結されて一体に成形されている。図示例では、長手方向に沿った一方の側壁4について、その前後両端部および中間の2箇所の計4箇所にボルトボス部6が設けられている。このボルトボス部6は、フランジ部5とともに、側壁4から外側へ張り出した形に形成されている。換言すれば、適宜な間隔に設けられた一対のボルトボス部6同士を互いに連結するようにフランジ部5が設けられている。上記ボルトボス部6には、図示しないボルトが挿入されるボルト挿入孔7が貫通形成されている。   The flange portion 5 is continuous over the entire circumference, and a substantially cylindrical bolt boss portion 6 arranged at an appropriate interval is connected to the flange portion 5 and integrally formed. In the example of illustration, about one side wall 4 along the longitudinal direction, the bolt boss | hub part 6 is provided in a total of four places, the front-and-rear both-ends part, and two middle places. The bolt boss portion 6 is formed in a shape projecting outward from the side wall 4 together with the flange portion 5. In other words, the flange portion 5 is provided so as to connect a pair of bolt boss portions 6 provided at appropriate intervals to each other. A bolt insertion hole 7 into which a bolt (not shown) is inserted is formed through the bolt boss portion 6.

上記フランジ部5のフランジ面には、全周に連続した1本のガスケット保持溝8(図4,図5参照)が凹設されており、ここに保持されるゴム製のガスケット(図示せず)を介して、図示しないシリンダヘッドの上面にシリンダヘッドカバー1が固定されるようになっている。ここで、相手側部材であるシリンダヘッドは、アルミニウム合金からなり、シリンダヘッドカバー1に比較して、相対的に熱膨張率が小さい。   On the flange surface of the flange portion 5, a single gasket holding groove 8 (see FIGS. 4 and 5) that is continuous over the entire circumference is recessed, and a rubber gasket (not shown) held therein is held. ), The cylinder head cover 1 is fixed to the upper surface of the cylinder head (not shown). Here, the cylinder head, which is the counterpart member, is made of an aluminum alloy and has a relatively low coefficient of thermal expansion as compared with the cylinder head cover 1.

図2〜図5は、隣接する2つのボルトボス部6の間に設けられたフランジ部5の詳細を示している。図2に明らかなように、フランジ部5のボルト軸方向の高さは一定ではなく、2つのボルトボス部6に挟まれた区間の両端部5a,5aつまりボルトボス部6に接する部分で、ボルトボス部6と略等しい最も大きい高さを有し、ここから2つのボルトボス部6の間の中央部5bに向かって徐々に低くなるように、その高さが変化している。なお、図4,図5に示すように、側壁4から張り出したフランジ部5の上面9は傾斜面をなしているが、”フランジ部の高さ”としては、例えば傾斜面の中の最も高い位置(つまり側壁4との接続部の高さ)、あるいは傾斜面の中の最も低い位置(つまり最も外側での高さ)、あるいは両者の中間の高さ、などのいずれであってもよい。   2 to 5 show details of the flange portion 5 provided between two adjacent bolt boss portions 6. As is apparent from FIG. 2, the height of the flange portion 5 in the bolt axis direction is not constant, and the bolt boss portion is a portion in contact with both ends 5 a and 5 a of the section sandwiched between the two bolt boss portions 6, that is, the bolt boss portion 6. 6 has the largest height substantially equal to 6, and the height changes so as to gradually decrease from here toward the central portion 5b between the two bolt boss portions 6. As shown in FIGS. 4 and 5, the upper surface 9 of the flange portion 5 protruding from the side wall 4 has an inclined surface, but the “height of the flange portion” is, for example, the highest among the inclined surfaces. The position (that is, the height of the connection portion with the side wall 4), the lowest position (that is, the height on the outermost side) in the inclined surface, or the height between the two may be used.

また、図3に示すように、フランジ部5の肉厚つまりボルトに直交する方向に沿った厚さ(図5に符号tで示す)も一定ではなく、ボルトボス部6に接する両端部5a,5aで最も薄く、ここから両ボルトボス部6の間の中央部5bへ向かって徐々に大きくなり、中央部5bで最大の厚さとなる。ここで、特に、フランジ部5の厚さの増減変化がシリンダヘッドカバー1の内側と外側とで対称に生じるようになっており、厚さが大となる中央部5b付近では、フランジ部5に接続される側壁4がシリンダヘッドカバー1の内側へ相対的に後退している。なお、フランジ部5の厚さの増減変化は、上記のように対称に生じさせるほか、一方の側、例えば、シリンダヘッドカバー1の内側のみを変化させ、外側を一定とすることもできる。また、ガスケット保持溝8は、2つのボルトボス部6に挟まれた区間では、フランジ部5の厚さ変化に拘わらず直線状に設けられている。   Further, as shown in FIG. 3, the thickness of the flange portion 5, that is, the thickness along the direction orthogonal to the bolt (indicated by reference sign t in FIG. 5) is not constant, and both end portions 5a, 5a in contact with the bolt boss portion 6 It is the thinnest and gradually increases from here toward the central portion 5b between the two bolt boss portions 6, and reaches the maximum thickness at the central portion 5b. Here, in particular, the increase / decrease change in the thickness of the flange portion 5 occurs symmetrically between the inside and the outside of the cylinder head cover 1, and is connected to the flange portion 5 in the vicinity of the central portion 5b where the thickness increases. The side wall 4 is relatively retracted to the inside of the cylinder head cover 1. In addition, the increase / decrease change of the thickness of the flange part 5 can be made symmetrical as described above, or only one side, for example, the inside of the cylinder head cover 1 can be changed, and the outside can be made constant. Further, the gasket holding groove 8 is provided in a straight line regardless of a change in the thickness of the flange portion 5 in a section between the two bolt boss portions 6.

図6は、上記のように構成された本発明のフランジ構造の作用を説明するための説明図であって、2つのボルトボス部6は、図示しないボルトによってシリンダヘッド11に対し堅固に固定されている。この状態で、内燃機関の運転により、シリンダヘッドカバー1の温度がシリンダヘッド11とともに上昇すると、熱膨張率の差に起因してシリンダヘッドカバー1の方が相対的に大きく膨張しようとする。つまりボルトにより位置が拘束された2つのボルトボス部6の間で、フランジ部5がその長手方向へ沿って伸びようとする。そのため、フランジ部5では、圧縮応力ひいてはその反力がボルトボス部6から中央部5bへ向かって作用するが、図示するようにフランジ部5の高さが中央部5bで低くなっていることから、ボルトボス部6から加わる反力が矢印F1,F1のように斜め下方へ傾いたものとなる。その結果、矢印F2で示すように、フランジ部5の中央部5bがシリンダヘッド11のフランジ面に垂直に押し付けられる。従って、ボルトボス部6近傍に比べてシール性が低下しやすい中央部5b付近でのシール面圧が向上し、ガスケットを介して良好なシール性能が得られる。   FIG. 6 is an explanatory diagram for explaining the operation of the flange structure of the present invention configured as described above. The two bolt boss portions 6 are firmly fixed to the cylinder head 11 by bolts (not shown). Yes. In this state, when the temperature of the cylinder head cover 1 rises together with the cylinder head 11 due to the operation of the internal combustion engine, the cylinder head cover 1 tends to expand relatively larger due to the difference in thermal expansion coefficient. That is, the flange portion 5 tends to extend along the longitudinal direction between the two bolt boss portions 6 whose positions are restricted by the bolts. Therefore, in the flange portion 5, the compressive stress and thus the reaction force acts from the bolt boss portion 6 toward the central portion 5b, but as shown in the figure, the height of the flange portion 5 is lowered at the central portion 5b. The reaction force applied from the bolt boss portion 6 is inclined obliquely downward as indicated by arrows F1 and F1. As a result, as indicated by the arrow F2, the center portion 5b of the flange portion 5 is pressed perpendicularly to the flange surface of the cylinder head 11. Accordingly, the seal surface pressure in the vicinity of the central portion 5b where the sealing performance is likely to be lower than in the vicinity of the bolt boss portion 6 is improved, and good sealing performance can be obtained through the gasket.

しかも、上記実施例では、中央部5b付近の厚さを端部5aよりも大としたことで、高さが減少したことに伴う中央部5b付近のフランジ部5自体の剛性低下が相殺される。従って、シール反力による中央部5b付近の変形を抑制して、より確実なシールを行うことができる。なお、前述したように、厚さの増減変化が対称に与えられているので、図6で説明した反力F1がシリンダヘッドカバー1の内側や外側へ傾くことがない。   In addition, in the above-described embodiment, the thickness near the center portion 5b is made larger than the end portion 5a, so that the rigidity reduction of the flange portion 5 itself near the center portion 5b due to the reduction in height is offset. . Therefore, deformation near the central portion 5b due to the seal reaction force can be suppressed, and more reliable sealing can be performed. As described above, since the increase and decrease in thickness are given symmetrically, the reaction force F1 described with reference to FIG. 6 does not tilt toward the inside or outside of the cylinder head cover 1.

次に、図7は、上記実施例の変形例を示しており、この実施例では、厚肉のフランジ部5の最下縁に、フランジ面に沿って外側に張り出すようにサブフランジ21が設けられている。このサブフランジ21は、ボルト軸方向の高さは一定であり、フランジ部5の厚さ方向に沿った寸法つまりフランジ部5からの突出量t2が、ボルトボス部6に近い両端部5a,5aでは小さく、両ボルトボス部6の間の中央部5bでは大となっている。そして、フランジ部5のボルト軸方向の高さは前述の実施例と同様に変化しているが、その厚さtは、両端部5a,5aから中央部5bへ亘って一定である。   Next, FIG. 7 shows a modification of the above-described embodiment. In this embodiment, the sub flange 21 is extended to the outside along the flange surface at the lowermost edge of the thick flange portion 5. Is provided. The height of the sub-flange 21 in the bolt axis direction is constant, and the dimension along the thickness direction of the flange portion 5, that is, the protruding amount t 2 from the flange portion 5 is at both ends 5 a and 5 a close to the bolt boss portion 6 It is small and is large at the central portion 5b between both bolt boss portions 6. The height of the flange portion 5 in the bolt axis direction changes in the same manner as in the above-described embodiment, but the thickness t is constant from both end portions 5a, 5a to the central portion 5b.

つまり、この実施例では、フランジ部5の厚さを変化させる代わりに、サブフランジ21の突出量t2を変化させることで、同様の中央部5b付近の剛性向上が達成される。なお、サブフランジ21と併せて、フランジ部5の厚さtを前述の実施例と同様に僅かに変化させるようにしてもよい。   That is, in this embodiment, instead of changing the thickness of the flange portion 5, by changing the protrusion amount t2 of the sub-flange 21, the same rigidity improvement in the vicinity of the central portion 5b is achieved. In addition to the sub flange 21, the thickness t of the flange portion 5 may be slightly changed in the same manner as in the above-described embodiment.

図8〜図10は、この発明の第2の実施例を示している。この実施例においては、フランジ部5の一部として傾斜した上面9からボルト軸方向に沿って壁状に立ち上がるリブ状部31を有しており、このリブ状部31の高さ(ボルト軸方向の高さ)が、両端部5a,5aから中央部5bへ向かって徐々に低くなるように変化している。傾斜した上面9の高さ位置は一定である。このようにリブ状部31の高さを変化させた構成によっても、図6で説明した作用が同様に得られる。   8 to 10 show a second embodiment of the present invention. In this embodiment, there is a rib-like portion 31 that rises in a wall shape along the bolt axis direction from the inclined upper surface 9 as a part of the flange portion 5, and the height of the rib-like portion 31 (bolt axial direction). ) Is gradually decreased from both end portions 5a, 5a toward the central portion 5b. The height position of the inclined upper surface 9 is constant. The action described with reference to FIG. 6 can be obtained in the same manner by the configuration in which the height of the rib-like portion 31 is changed in this way.

また、この実施例では、リブ状部31を含むフランジ部5の厚さtが前述の実施例と同様に変化しており、中央部5b付近の剛性が向上している。   Further, in this embodiment, the thickness t of the flange portion 5 including the rib-like portion 31 is changed in the same manner as in the above-described embodiment, and the rigidity in the vicinity of the central portion 5b is improved.

図11は、この第2の実施例の変形例を示しており、この実施例では、図7の実施例と同様に、厚肉のフランジ部5の最下縁に、フランジ面に沿って外側に張り出すようにサブフランジ21が設けられている。このサブフランジ21は、ボルト軸方向の高さは一定であり、フランジ部5の厚さ方向に沿った寸法つまりフランジ部5からの突出量t2が、ボルトボス部6に近い両端部5a,5aでは小さく、両ボルトボス部6の間の中央部5bでは大となっている。そして、フランジ部5の厚さtは、両端部5a,5aから中央部5bへ亘って一定となっている。   FIG. 11 shows a modified example of the second embodiment. In this embodiment, as in the embodiment of FIG. 7, the outer edge is formed along the flange surface at the lowermost edge of the thick flange portion 5. A sub-flange 21 is provided so as to overhang. The height of the sub-flange 21 in the bolt axis direction is constant, and the dimension along the thickness direction of the flange portion 5, that is, the protruding amount t 2 from the flange portion 5 is at both end portions 5 a and 5 a close to the bolt boss portion 6. It is small and is large at the central portion 5b between both bolt boss portions 6. The thickness t of the flange portion 5 is constant from both end portions 5a, 5a to the central portion 5b.

図12は、図11の実施例の一部を変更したさらなる変形例を示しており、この実施例では、上記サブフランジ21の先端縁に、ボルト軸方向に立ち上がる第2のリブ状部32が付加されている。この第2のリブ状部32は、リブ状部31と同じく、そのボルト軸方向の高さが、両端部5a,5aから中央部5bへ向かって徐々に低くなるように変化している。   FIG. 12 shows a further modification in which a part of the embodiment of FIG. 11 is changed. In this embodiment, a second rib-like portion 32 rising in the bolt axis direction is formed at the tip edge of the sub-flange 21. It has been added. As with the rib-shaped portion 31, the second rib-shaped portion 32 changes such that the height in the bolt axis direction gradually decreases from both end portions 5a, 5a toward the central portion 5b.

以上、この発明を内燃機関のシリンダヘッドカバーに適用した実施例を説明したが、本発明は、内燃機関の前面に取り付けられる合成樹脂製チェーンケース、金属製本体と組み合わされる合成樹脂製エアクリーナカバー、合成樹脂製オイルパン、などの種々の合成樹脂製カバー、さらには、シリンダヘッド側面に取り付けられる合成樹脂製吸気マニホルド、などにも適用することができる。すなわち、本発明におけるカバー類とは、ガスケットを介してシールを行う種々の形状の部品を包含するものである。また、必ずしも内燃機関の部品に限定されず、高温環境下で用いられる種々の部品に適用することができる。   The embodiment in which the present invention is applied to the cylinder head cover of the internal combustion engine has been described above. However, the present invention relates to a synthetic resin chain case attached to the front surface of the internal combustion engine, a synthetic resin air cleaner cover combined with a metal body, and a synthetic resin. The present invention can also be applied to various synthetic resin covers such as a resin oil pan, and further to a synthetic resin intake manifold attached to the side surface of the cylinder head. That is, the covers in the present invention include parts having various shapes for sealing through a gasket. Further, the present invention is not necessarily limited to the components of the internal combustion engine, and can be applied to various components used in a high temperature environment.

この発明に係るシリンダヘッドカバーの斜視図。The perspective view of the cylinder head cover concerning this invention. その要部の斜視図。The perspective view of the principal part. 同じく上面図。Similarly top view. 図3のA−A線に沿った断面図。Sectional drawing along the AA line of FIG. 図3のB−B線に沿った断面図。Sectional drawing along the BB line of FIG. 温度上昇時の作用を説明する説明図。Explanatory drawing explaining the effect | action at the time of a temperature rise. フランジ部の変形例を示す要部の断面図。Sectional drawing of the principal part which shows the modification of a flange part. この発明に係るシリンダヘッドカバーの第2の実施例を示す斜視図。The perspective view which shows the 2nd Example of the cylinder head cover concerning this invention. 図8のC−C線に沿った断面図。Sectional drawing along CC line of FIG. 図8のD−D線に沿った断面図。Sectional drawing along the DD line | wire of FIG. フランジ部の変形例を示す要部の断面図。Sectional drawing of the principal part which shows the modification of a flange part. 同じく変形例を示す要部の断面図。Sectional drawing of the principal part which shows a modification similarly.

符号の説明Explanation of symbols

1…シリンダヘッドカバー
4…側壁
5…フランジ部
5a…端部
5b…中央部
6…ボルトボス部
31…リブ状部
DESCRIPTION OF SYMBOLS 1 ... Cylinder head cover 4 ... Side wall 5 ... Flange part 5a ... End part 5b ... Center part 6 ... Bolt boss part 31 ... Rib-shaped part

Claims (3)

カバー側壁の端縁に該カバー側壁よりも厚肉となったフランジ部を有するとともに、適宜な間隔で配置された略円筒状のボルトボス部が、このフランジ部に連結されて一体に成形されてなり、相対的に熱膨張率が小さな相手側部材と上記フランジ部との間にガスケットを介して上記ボルトボス部を通るボルトにより取り付けられる合成樹脂製カバー類において、
一対のボルトボス部の間のフランジ部のボルト軸方向の高さが、ボルトボス部に接する両端部から両ボルトボス部の間の中央部へ向かって徐々に小さくなるように変化していることを特徴とする合成樹脂製カバー類のフランジ構造。
A flange portion thicker than the cover side wall is provided at the edge of the cover side wall, and a substantially cylindrical bolt boss portion arranged at an appropriate interval is connected to the flange portion and integrally formed. In the synthetic resin covers attached by bolts that pass through the bolt boss part via a gasket between the counterpart member having a relatively small coefficient of thermal expansion and the flange part,
The height in the bolt axial direction of the flange portion between the pair of bolt boss portions changes so as to gradually decrease from both end portions in contact with the bolt boss portion toward the center portion between both bolt boss portions. The flange structure of synthetic resin covers.
上記フランジ部の厚さが、ボルトボス部に接する両端部から両ボルトボス部の間の中央部へ向かって徐々に大きくなるように変化していることを特徴とする請求項1に記載の合成樹脂製カバー類のフランジ構造。   The thickness of the said flange part is changing so that it may become large gradually toward the center part between both bolt boss parts from the both ends which contact | connect a bolt boss part, The synthetic resin product of Claim 1 characterized by the above-mentioned. Flange structure for covers. 上記フランジ部の一部としてボルト軸方向に沿ったリブ状部を有し、このリブ状部の高さが変化していることを特徴とする請求項1または2に記載の合成樹脂製カバー類のフランジ構造。
The synthetic resin cover according to claim 1 or 2, wherein a rib-like portion along the bolt axis direction is provided as a part of the flange portion, and a height of the rib-like portion is changed. Flange structure.
JP2005353213A 2005-12-07 2005-12-07 Flange structure of synthetic resin covers Expired - Fee Related JP4681440B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2005353213A JP4681440B2 (en) 2005-12-07 2005-12-07 Flange structure of synthetic resin covers

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2005353213A JP4681440B2 (en) 2005-12-07 2005-12-07 Flange structure of synthetic resin covers

Publications (2)

Publication Number Publication Date
JP2007154812A true JP2007154812A (en) 2007-06-21
JP4681440B2 JP4681440B2 (en) 2011-05-11

Family

ID=38239492

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2005353213A Expired - Fee Related JP4681440B2 (en) 2005-12-07 2005-12-07 Flange structure of synthetic resin covers

Country Status (1)

Country Link
JP (1) JP4681440B2 (en)

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010174631A (en) * 2009-01-27 2010-08-12 Mahle Filter Systems Japan Corp Liquid filler port structure of resin molded article, and resin cylinder head cover
JP2013112082A (en) * 2011-11-25 2013-06-10 Nissin Kogyo Co Ltd Housing
JP2014163334A (en) * 2013-02-27 2014-09-08 Mahle Filter Systems Japan Corp Cylinder head cover for internal combustion engine
US9038603B2 (en) 2011-10-26 2015-05-26 Toyota Jidosha Kabushiki Kaisha Fastening structure of fuel delivery pipe and cylinder head of internal combustion engine
JP2017172527A (en) * 2016-03-25 2017-09-28 アイシン精機株式会社 Resin cylinder head cover

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS60145210U (en) * 1984-03-08 1985-09-26 日産自動車株式会社 Internal combustion engine cover
JP2002071024A (en) * 2000-08-31 2002-03-08 Toyoda Gosei Co Ltd Elastic gasket

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS60145210U (en) * 1984-03-08 1985-09-26 日産自動車株式会社 Internal combustion engine cover
JP2002071024A (en) * 2000-08-31 2002-03-08 Toyoda Gosei Co Ltd Elastic gasket

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2010174631A (en) * 2009-01-27 2010-08-12 Mahle Filter Systems Japan Corp Liquid filler port structure of resin molded article, and resin cylinder head cover
US9038603B2 (en) 2011-10-26 2015-05-26 Toyota Jidosha Kabushiki Kaisha Fastening structure of fuel delivery pipe and cylinder head of internal combustion engine
JP2013112082A (en) * 2011-11-25 2013-06-10 Nissin Kogyo Co Ltd Housing
JP2014163334A (en) * 2013-02-27 2014-09-08 Mahle Filter Systems Japan Corp Cylinder head cover for internal combustion engine
EP2787209A1 (en) 2013-02-27 2014-10-08 MAHLE Filter Systems Japan Corporation Cylinder head cover of internal combustion engine
US9470180B2 (en) 2013-02-27 2016-10-18 Mahle Filter Systems Japan Corporation Cylinder head cover of internal combustion engine
JP2017172527A (en) * 2016-03-25 2017-09-28 アイシン精機株式会社 Resin cylinder head cover
WO2017163791A1 (en) * 2016-03-25 2017-09-28 アイシン精機株式会社 Resin cylinder head cover

Also Published As

Publication number Publication date
JP4681440B2 (en) 2011-05-11

Similar Documents

Publication Publication Date Title
EP2341268B1 (en) Gasket
JP4681440B2 (en) Flange structure of synthetic resin covers
JP6249751B2 (en) Water jacket spacer
US20170314507A1 (en) Bearing cap of internal combustion engine
WO2014065318A1 (en) Attachment structure for partition member
JP2007077975A (en) Internal combustion engine
JP6394922B2 (en) Internal combustion engine
JP5382927B2 (en) gasket
JP4475327B2 (en) Bracket fastening structure
JP2009293508A (en) Oil pan
JP2009036047A (en) Internal combustion engine
JP6344150B2 (en) Engine crankshaft bearing structure
JP5488745B2 (en) Cylinder block
JP5953039B2 (en) Assembly structure of resin parts
JP3876249B2 (en) Fuel injection valve seal structure
JP2010151063A (en) Cylinder block
JP4222194B2 (en) Engine cylinder head mounting structure
JP2007321605A (en) Seal structure of head cover
JP5109843B2 (en) Gasket and cylinder head seal structure
JP3876248B2 (en) Fuel injection valve seal structure
JP2014521922A (en) Plate heat exchanger
JP6252258B2 (en) Intake port structure of internal combustion engine
JP2006144664A (en) Main bearing structure for v-type engine
JP4407831B2 (en) Open deck cylinder block
JP4243239B2 (en) Combustion pressure detector

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20081203

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20100812

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20100914

A521 Written amendment

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20101109

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20110125

A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20110204

R150 Certificate of patent (=grant) or registration of utility model

Free format text: JAPANESE INTERMEDIATE CODE: R150

FPAY Renewal fee payment (prs date is renewal date of database)

Free format text: PAYMENT UNTIL: 20140210

Year of fee payment: 3

FPAY Renewal fee payment (prs date is renewal date of database)

Free format text: PAYMENT UNTIL: 20140210

Year of fee payment: 3

S531 Written request for registration of change of domicile

Free format text: JAPANESE INTERMEDIATE CODE: R313531

FPAY Renewal fee payment (prs date is renewal date of database)

Free format text: PAYMENT UNTIL: 20140210

Year of fee payment: 3

R350 Written notification of registration of transfer

Free format text: JAPANESE INTERMEDIATE CODE: R350

LAPS Cancellation because of no payment of annual fees